M. J. Mcconville and M. A. Ferguson, The structure, biosynthesis and function of glycosylated phosphatidylinositols in the parasitic protozoa and higher eukaryotes, Biochem. J, vol.294, pp.305-324, 1993.

W. Cao, J. Maruyama, K. Kitamoto, K. Sumikoshi, T. Terada et al., Using a new GPI-anchored-protein identification system to mine the protein databases of Aspergillus fumigatus, Aspergillus nidulans, and Aspergillus oryzae, J. Gen. Appl. Microbiol, vol.55, pp.381-393, 2009.

J. Latgé, The cell wall: A carbohydrate armour for the fungal cell, Mol. Microbiol, vol.66, pp.279-290, 2007.

A. Gastebois, I. Mouyna, C. Simenel, C. Clavaud, B. Coddeville et al., Characterization of a New ?(1-3)-Glucan Branching Activity of Aspergillus fumigatus, J. Biol. Chem, vol.285, pp.2386-2396, 2010.
URL : https://hal.archives-ouvertes.fr/pasteur-01709918

R. P. Hartland, T. Fontaine, J. P. Debeaupuis, C. Simenel, M. Delepierre et al., A novel beta-(1-3)-glucanosyltransferase from the cell wall of Aspergillus fumigatus, J. Biol. Chem, vol.271, pp.26843-26849, 1996.
URL : https://hal.archives-ouvertes.fr/pasteur-00376441

I. Mouyna, T. Fontaine, M. Vai, M. Monod, W. A. Fonzi et al., Glycosylphosphatidylinositol-anchored glucanosyltransferases play an active role in the biosynthesis of the fungal cell wall, J. Biol. Chem, vol.275, pp.14882-14889, 2000.

A. Gastebois, T. Fontaine, J. Latgé, and I. Mouyna, -3)Glucanosyltransferase Gel4p is Essential for Aspergillus fumigatus, Eukaryot. Cell, vol.9, issue.1, pp.1294-1298, 2010.

V. Aimanianda, C. Simenel, C. Garnaud, C. Clavaud, R. Tada et al., The Dual Activity Responsible for the Elongation and Branching of ?-(1,3)-Glucan in the Fungal Cell Wall, vol.8, 2017.

E. Cabib, V. Farkas, O. Kosík, N. Blanco, J. Arroyo et al., Assembly of the Yeast Cell Wall Crh1p and Crh2p Act as Transglycosylases In Vivo and In Vitro, J. Biol. Chem, vol.283, pp.29859-29872, 2008.

H. Kitagaki, H. Wu, H. Shimoi, and K. Ito, Two homologous genes, DCW1 (YKL046c) and DFG5, are essential for cell growth and encode glycosylphosphatidylinositol (GPI)-anchored membrane proteins required for cell wall biogenesis in Saccharomyces cerevisiae, Mol. Microbiol, vol.46, pp.1011-1022, 2002.

L. Muszkieta, T. Fontaine, R. Beau, I. Mouyna, M. S. Vogt et al., The GPI-anchored DFG family is essential for cross-linking galactomannan to cell wall ?1-3glucan in Aspergillus fumigatus, J. Biol. Chem, 2018.

C. Fankhauser, S. W. Homans, J. E. Thomas-oates, M. J. Mcconville, C. Desponds et al., Structures of glycosylphosphatidylinositol membrane anchors from Saccharomyces cerevisiae, J. Biol. Chem, vol.268, pp.26365-26374, 1993.

T. Fontaine, T. Magnin, A. Melhert, D. Lamont, J. Latgé et al., Structures of the glycosylphosphatidylinositol membrane anchors from Aspergillus fumigatus membrane proteins, Glycobiology, vol.13, pp.169-177, 2003.

, J. Fungi, vol.4, pp.19-32, 2018.

Y. , T. Ichikawa, D. Miyagishi, Y. Kato, A. Umemura et al., Determination and physiological roles of the glycosylphosphatidylinositol lipid remodelling pathway in yeast, Mol. Microbiol, vol.88, pp.140-155, 2013.

C. Costachel, B. Coddeville, J. Latgé, and T. Fontaine, Glycosylphosphatidylinositol-anchored Fungal Polysaccharide in Aspergillus fumigatus, J. Biol. Chem, vol.280, pp.39835-39842, 2005.

P. Orlean, Architecture and biosynthesis of the Saccharomyces cerevisiae cell wall, Genetics, vol.192, pp.775-818, 2012.

M. Pittet and A. Conzelmann, Biosynthesis and function of GPI proteins in the yeast Saccharomyces cerevisiae, Biochim. Biophys. Acta BBA Mol. Cell Biol. Lipids, vol.1771, pp.405-420, 2007.

T. Fontaine, T. K. Smith, A. Crossman, J. S. Brimacombe, J. Latgé et al., In Vitro Biosynthesis of Glycosylphosphatidylinositol in Aspergillus fumigatus, Biochemistry (Moscow), vol.43, pp.15267-15275, 2004.

J. Manzano-lopez, A. M. Perez-linero, A. Aguilera-romero, M. E. Martin, T. Okano et al., COPII Coat Composition is Actively Regulated by Luminal Cargo Maturation. Curr. Biol, vol.25, pp.152-162, 2015.

H. M. Vazquez, C. Vionnet, C. Roubaty, and A. Conzelmann, Cdc1 removes the ethanolamine phosphate of the first mannose of GPI anchors and thereby facilitates the integration of GPI proteins into the yeast cell wall, Mol. Biol. Cell, vol.25, pp.3375-3388, 2014.

A. T. Krüger, J. Engel, F. F. Buettner, and F. H. Routier, Aspergillus fumigatus Cap59-like protein A is involved in ?1,3-mannosylation of GPI-anchors, Glycobiology, vol.26, pp.30-38, 2016.

M. Fujita and Y. Jigami, Lipid remodeling of GPI-anchored proteins and its function, Biochim. Biophys. Acta BBA Gen. Subj, vol.1780, pp.410-420, 2008.

V. Ghugtyal, C. Vionnet, C. Roubaty, and A. Conzelmann, CWH43 is required for the introduction of ceramides into GPI anchors in Saccharomyces cerevisiae, Mol. Microbiol, vol.65, pp.1493-1502, 2007.

M. Fujita, M. Umemura, T. Yoko-o, and Y. Jigami, PER1 is Required for GPI-Phospholipase A2 Activity and Involved in Lipid Remodeling of GPI-anchored Proteins, Mol. Biol. Cell, vol.17, pp.5253-5264, 2006.

R. Bosson, M. Jaquenoud, and A. Conzelmann, GUP1 of Saccharomyces cerevisiae Encodes an O-Acyltransferase Involved in Remodeling of the GPI Anchor, Mol. Biol. Cell, vol.17, pp.2636-2645, 2006.

M. Umemura, M. Fujita, T. Yoko-o, A. Fukamizu, and Y. Jigami, Saccharomyces cerevisiae CWH43 is Involved in the Remodeling of the Lipid Moiety of GPI Anchors to Ceramides, Mol. Biol. Cell, vol.18, pp.4304-4316, 2007.

Y. Maeda, Y. Tashima, T. Houjou, M. Fujita, T. Yoko-o et al., Fatty Acid Remodeling of GPI-anchored Proteins is Required for Their Raft Association, Mol. Biol. Cell, vol.18, pp.1497-1506, 2007.

D. Chung, A. Thammahong, K. M. Shepardson, S. J. Blosser, and R. A. Cramer, Endoplasmic reticulum localized PerA is required for cell wall integrity, azole drug resistance, and virulence in Aspergillus fumigatus, Mol. Microbiol, vol.92, pp.1279-1298, 2014.

P. J. Punt, R. P. Oliver, M. A. Dingemanse, P. H. Pouwels, and C. A. Van-den-hondel, Transformation of Aspergillus based on the hygromycin B resistance marker from Escherichia coli, Gene, vol.56, pp.117-124, 1987.

M. E. Da-silva-ferreira, M. R. Kress, M. Savoldi, M. H. Goldman, A. Härtl et al., The akuBKU80 Mutant Deficient for Nonhomologous End Joining is a Powerful Tool for Analyzing Pathogenicity in Aspergillus fumigatus, Eukaryot. Cell, vol.5, pp.207-211, 2006.

P. D. Collopy, H. V. Colot, G. Park, C. Ringelberg, C. M. Crew et al., High-throughput construction of gene deletion cassettes for generation of Neurospora crassa knockout strains, Methods Mol. Biol. Clifton NJ, vol.638, pp.33-40, 2010.

L. Muszkieta, V. Aimanianda, E. Mellado, S. Gribaldo, L. Alcàzar-fuoli et al., Deciphering the role of the chitin synthase families 1 and 2 in the in vivo and in vitro growth of Aspergillus fumigatus by multiple gene targeting deletion, Cell. Microbiol, vol.16, pp.1784-1805, 2014.

M. Dubois, K. A. Gilles, J. K. Hamilton, P. A. Rebers, and F. Smith, Colorimetric Method for Determination of Sugars and Related Substances, Anal. Chem, vol.28, pp.350-356, 1956.

T. Stalhberger, C. Simenel, C. Clavaud, V. G. Eijsink, R. Jourdain et al., Chemical Organization of the Cell Wall Polysaccharide Core of Malassezia restricta, J. Biol. Chem, vol.289, pp.12647-12656, 2014.
URL : https://hal.archives-ouvertes.fr/pasteur-01723701

M. Bernard, I. Mouyna, G. Dubreucq, J. Debeaupuis, T. Fontaine et al., Characterization of a cell-wall acid phosphatase (PhoAp) in Aspergillus fumigatus, Microbiol. Read. Engl, vol.148, pp.2819-2829, 2002.
URL : https://hal.archives-ouvertes.fr/pasteur-01710765

S. Chabane, J. Sarfati, O. Ibrahim-granet, C. Du, C. Schmidt et al., Glycosylphosphatidylinositol-Anchored Ecm33p Influences Conidial Cell Wall Biosynthesis in Aspergillus fumigatus, Appl. Environ. Microbiol, vol.72, pp.3259-3267, 2006.
URL : https://hal.archives-ouvertes.fr/pasteur-01710053

C. Simenel, B. Coddeville, M. Delepierre, J. Latgé, and T. Fontaine, Glycosylinositolphosphoceramides in Aspergillus fumigatus, Glycobiology, vol.18, pp.84-96, 2008.
URL : https://hal.archives-ouvertes.fr/pasteur-00366203

J. M. Bruneau, T. Magnin, E. Tagat, R. Legrand, M. Bernard et al., Proteome analysis of Aspergillus fumigatus identifies glycosylphosphatidylinositol-anchored proteins associated to the cell wall biosynthesis, Electrophoresis, vol.22, pp.2812-2823, 2001.

A. Treumann, M. L. Güther, P. Schneider, and M. A. Ferguson, Analysis of the carbohydrate and lipid components of glycosylphosphatidylinositol structures, Methods Mol. Biol. Clifton NJ, vol.76, pp.213-235, 1998.

N. Zehethofer, T. Scior, and B. Lindner, Elucidation of the fragmentation pathways of different phosphatidylinositol phosphate species (PIPx) using IRMPD implemented on a FT-ICR MS, Anal. Bioanal. Chem, vol.398, pp.2843-2851, 2010.

M. S. Toledo, S. B. Levery, B. Bennion, L. L. Guimaraes, S. A. Castle et al., Analysis of glycosylinositol phosphorylceramides expressed by the opportunistic mycopathogen Aspergillus fumigatus, J. Lipid Res, vol.48, pp.1801-1824, 2007.

J. Engel, P. S. Schmalhorst, A. T. Krüger, C. T. Müller, F. F. Buettner et al., Characterization of an N-acetylglucosaminyltransferase involved in Aspergillus fumigatus zwitterionic glycoinositolphosphoceramide biosynthesis, Glycobiology, vol.25, pp.1423-1430, 2015.

A. Kotz, J. Wagener, J. Engel, F. Routier, B. Echtenacher et al., The mitA gene of Aspergillus fumigatus is required for mannosylation of inositol-phosphorylceramide, but is dispensable for pathogenicity, Fungal Genet. Biol. FG B, vol.47, pp.169-178, 2010.

C. Lamarre, R. Beau, V. Balloy, T. Fontaine, J. W. Hoi et al., Galactofuranose attenuates cellular adhesion of Aspergillus fumigatus, Cell. Microbiol, vol.11, pp.1612-1623, 2009.

Y. Komachi, S. Hatakeyama, H. Motomatsu, T. Futagami, K. Kizjakina et al., GfsA encodes a novel galactofuranosyltransferase involved in biosynthesis of galactofuranose antigen of O-glycan in Aspergillus nidulans and A. fumigatus, Mol. Microbiol, vol.90, pp.1054-1073, 2013.

Y. Katafuchi, Q. Li, Y. Tanaka, S. Shinozuka, Y. Kawamitsu et al., GfsA is a ?1,5-galactofuranosyltransferase involved in the biosynthesis of the galactofuran side chain of fungal-type galactomannan in Aspergillus fumigatus, Glycobiology, vol.27, pp.568-581, 2017.

J. Engel, P. S. Schmalhorst, T. Dörk-bousset, V. Ferrières, and F. H. Routier, A Single UDP-galactofuranose Transporter is Required for Galactofuranosylation in Aspergillus fumigatus, J. Biol. Chem, vol.284, pp.33859-33868, 2009.

Y. Jigami, Yeast Glycobiology and Its Application. Biosci. Biotechnol. Biochem, vol.72, pp.637-648, 2008.

C. Henry, T. Fontaine, C. Heddergott, P. Robinet, V. Aimanianda et al., Biosynthesis of cell wall mannan in the conidium and the mycelium of Aspergillus fumigatus, Cell. Microbiol, vol.18, pp.1881-1891, 2016.
URL : https://hal.archives-ouvertes.fr/pasteur-01500709